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Mid-infrared Polaritonic Coupling between Boron Nitride Nanotubes and Graphene

机译:氮化硼纳米管与石墨烯之间的中红外极化耦合。

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摘要

Boron nitride (BN) is considered to be a promising substrate for graphene-based devices in part because its large band gap can serve to insulate graphene in layered heterostructures. At mid-infrared frequencies, graphene supports surface plasmon polaritons (SPPs), whereas hexagonal-BN (h-BN) is found to support surface phonon polaritons (SPhPs). We report on the observation of infrared polaritonic coupling between graphene SPPs and boron nitride nanotube (BNNT) SPhPs. Infrared scattering type scanning near-field optical microscopy is used to obtain spatial distribution of the two types of polaritons at the nanoscale. The observation suggests that those polaritons interact at the nanoscale in a one-dimensional/two-dimensional (1D/2D) geometry, exchanging energy in a nonplanar configuration at the nanoscale. Control of the polaritonic interaction is achieved by adjustment of the graphene Fermi level through voltage gating. Our observation suggests that boron nitride nanotubes and graphene can interact at mid-infrared frequencies and coherently exchange their energies at the nanoscale through the overlap of mutual electric near field of surface phonon polaritons and surface plasmon polaritons. Such interaction enables the design of nano-optical devices based on BNNT-graphene polaritonics in the mid-infrared range.
机译:氮化硼(BN)被认为是用于石墨烯基器件的有前途的衬底,部分原因是氮化硼(BN)的大带隙可以使石墨烯绝缘于层状异质结构中。在中红外频率下,石墨烯支持表面等离振子极化子(SPPs),而六角形BN(h-BN)被发现支持表面声子极化子(SPhPs)。我们报告观察到的石墨烯SPP和氮化硼纳米管(BNNT)SPhPs之间的红外极化耦合。红外散射型扫描近场光学显微镜用于获得纳米级两种极化子的空间分布。观察表明,这些极化子在一维/二维(1D / 2D)几何结构中在纳米尺度上相互作用,在纳米尺度上以非平面配置交换能量。通过电压门控来调节石墨烯费米能级,从而实现对极化相互作用的控制。我们的观察表明,氮化硼纳米管和石墨烯可以在中红外频率相互作用,并且通过表面声子极化子和表面等离子体激元极化子的相互电场的重叠,在纳米尺度上相干地交换能量。这种相互作用使得能够设计基于中红外范围内的BNNT-石墨烯极化子的纳米光学器件。

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